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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Gravity wave influence on the global structure of the diurnal tide in the mesosphere and lower thermosphere
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Gravity wave influence on the global structure of the diurnal tide in the mesosphere and lower thermosphere

机译:重力波的影响全球的结构中间层的全日潮和低热大气层

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摘要

Observations of the diurnal tide from instruments aboard the Thermosphere, Ionosphere, Mesosphere, Energetics and Dynamics (TIMED) explorer and from the Upper Atmosphere Research Satellite (UARS) show that the vertical wavelength of the tide is significantly shorter than what is predicted by tidal theory. The observed vertical structure of the tide can be reproduced in a mechanistic model by including gravity wave interaction. The model tide amplitude and phase are sensitive to the amplitude and phase of the diurnal component of momentum forcing that arises from gravity wave breaking. The phase of the momentum forcing relative to the tide determines whether the tide amplitude is increased or diminished by gravity wave forcing, while the amplitude of the momentum forcing determines how rapidly the tide phase will change with height. The momentum forcing profile is shaped by the structure of the gravity wave source spectrum. By comparing both the model tide amplitude and phase profiles to observations, we can provide constraints on both the gravity wave source spectrum that should be used in a gravity wave parameterization scheme and on the eddy diffusion that acts on the tide. We examine differences between the effects that two gravity wave schemes have on the tide. The role that gravity waves may play in producing tide variability is discussed in light of the results presented here.
机译:全日潮的观测仪器在热大气层、电离层、中间层,从能量学和动力学(定时)explorer和高层大气研究卫星(UARS)显示垂直波长的潮流明显短于预测潮汐理论。潮水在机械模型也可以复制通过包括重力波的相互作用。潮振幅和相位敏感昼夜分量的振幅和相位动力迫使来自重力波打破。相对于潮流决定了潮流振幅是由重力增加或减少波强迫,而动量的振幅迫使决定迅速潮阶段将随高度变化。配置文件是由结构的重力波频谱来源。潮振幅和相位的概要文件观察,我们可以提供约束重力波源谱用于重力波参数化方案和涡流扩散,作用于潮流。我们检查差异的影响两个重力波方案对潮流。在生产过程中,重力波可能扮演的角色潮汐变化的讨论这里给出的结果。

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